Periodically driven quantum systems can be used to realize quantum pumps, ratchets, artificial gauge fields, and novel topological states of matter. Starting from the Keldysh approach, we develop a formalism, the Floquet-Boltzmann equation, to describe the dynamics and the scattering of quasiparticles in such systems. The theory builds on a separation of time scales. Rapid, periodic oscillations occurring on a time scale T-0 = 2 pi/Omega are treated using the Floquet formalism and quasiparticles are defined as eigenstates of a noninteracting Floquet Hamiltonian. The dynamics on much longer time scales, however, is modeled by a Boltzmann equation which describes the semiclassical dynamics of the Floquet quasiparticles and their scattering pr...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
Periodically driven quantum systems can be used to realize quantum pumps, ratchets, artificial gauge...
Periodically driven quantum systems can be used to realize quantum pumps, ratchets, artificial gauge...
Controlling and manipulating complex many-body quantum systems will be a key ingredient for the dev...
We present theoretical methods for studying quantum mechanical systems subjected to fast periodic dr...
Floquet engineering offers tantalizing opportunities for controlling the dynamics of quantum many-bo...
We study long-time asymptotic states of periodically driven quantum systems coupled to a thermal bat...
Motivated by recent experimental implementations of artificial gauge fields for gases of cold atoms,...
Motivated by recent experimental implementations of artificial gauge fields for gases of cold atoms,...
We study the recent Floquet-realisation of the Harper-Hofstadter model in a gas of cold bosonic atom...
The manipulation of many-body systems often involves time-dependent forces that cause unwanted heati...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
Periodically driven quantum systems can be used to realize quantum pumps, ratchets, artificial gauge...
Periodically driven quantum systems can be used to realize quantum pumps, ratchets, artificial gauge...
Controlling and manipulating complex many-body quantum systems will be a key ingredient for the dev...
We present theoretical methods for studying quantum mechanical systems subjected to fast periodic dr...
Floquet engineering offers tantalizing opportunities for controlling the dynamics of quantum many-bo...
We study long-time asymptotic states of periodically driven quantum systems coupled to a thermal bat...
Motivated by recent experimental implementations of artificial gauge fields for gases of cold atoms,...
Motivated by recent experimental implementations of artificial gauge fields for gases of cold atoms,...
We study the recent Floquet-realisation of the Harper-Hofstadter model in a gas of cold bosonic atom...
The manipulation of many-body systems often involves time-dependent forces that cause unwanted heati...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...
International audienceIn this work, we present a new approach to disordered, periodically driven (Fl...